What is the Value of Ma (DL+LL)?
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A cantilever beam, having a length of 7.0 m, carries a uniformly distributed dead load of 10 kN/m, and a uniformly distributed live load of 11 kN/m. Take Ec = 20,000 MPa, Ie = 3000x10^9 mm^4
a) What is the Value of Ma (DL+LL)?
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- A tripod whose legs are each 4 meters long supports a load of 1000 kg. The feet of the tripod are the vertices of a horizontal equilateral triangle whose side is 3.5 m. Determine the load on each leg.As shown, a uniform beam of length d = 1.80m and mass 21.3kg is attached to a wall with a pin at point B. A cable attached at point A supports the beam. The beam supports a distributed weight W2 = 345N/m . If the support cable can sustain a maximum tension of 1250N , what is the maximum value for W1? Under this maximum weight, what is FBy which is the vertical component of the support's reaction force at point B? Show calculations. Will rate if correct.Distributed load, w0 = 4 N/mL = 3.4 m Find the distance of the equivalent concentrated force from A (in m).If the calculated answer is not whole number, express it in 4 significant figures.
- A tripod whose legs are each 4 meters long supports a load of 1000 kg. The feet of the tripodare vertices of a horizontal equilateral triangle whose side is 3.5 meters. Determine the load of each leg.A cantilever beam is subjected to an inclined load P (as shown in the figure) at the free end. Determine maximum bending stress developed in MPa. Given data: b = 100 mm, h = 200 mm, L = 2 m, P = 2 kN and α = 45⁰.A steel plate 2.2 m x 1.4 m x 100 mm thick is to be hoisted by a steel cable sling as shown in the figure. Assume the steel weighs 77.3 kN/cu.m. Determine the vertical displacement of the steel plate when suspended if the sling cable is 55 sq.mm. in area. The correct answer is 2.84. Show solution.
- Replace the distributed loading by an equivalent resultant force. Suppose that w1 = 3.4 kN/m and w2 = 2.2 kN/m Specify where the force line of action intersects a vertical line along meme we BC, measured from C Express your answer to three significant figures and include the appropriate units. d=A horizontal force P acts on the top of the 30N block having a width of 25 cm and a height of 50 cm. If the coefficient of friction between the block and the plane is 0.33. What is the value of P for motion to impend?As shown in the figure below, a cantilever beam has a span of 6m long. And it is subjected to a concentrated load 6kN acting 4m from the support and a clockwise moment of 30kN.m at the free end. E = 200 GPa and I = 100,000,000 ??^4 . (Use area moment method) a) Determine the deflection at the free end due to concentrated load only. b) Determine the maximum deflection at the free end.
- A (5+03/50) m long column has external and internal diameter of 5cm and 4 cm respectively. Calculate the load carrying capacity of column by Rankine’s and Euler’s formula. Take yield stress as 560MPa, a=1/1600 and Youngs modulus as 1.2GPa. if both the ends are fixed. if both the ends are hinged.The floor system of a gymnasium consists of a 130-mm-thick concrete slab resting on four steel beams (A = 9,100 mm^2)that, in turn, are supported by two steel girders (A = 25,600 mm^2), as shown in the figure. Determine the dead loads acting on beam BF and girder AD.Need help experts. The rigid body shown in the figure is subjected to the indicated force system. Determine the forces applied at points A and E that equal the applied force system.Data: β = 48°; a = 6,6 m; b = 8,9 m; F = 31 kN; P1 = 20,743 kN; P2 = 23,037 kN The force applied at point A is FA = ? Answer kN and the force applied at point B is FB = ? Answer kN.